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Modelling the surface free energy parameters of polyurethane coats—part 2. Waterborne coats obtained from cationomer polyurethanes

机译:聚氨酯涂料的表面自由能参数建模-第2部分。从阳离子聚合物聚氨酯获得的水性涂料

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摘要

Polyurethane cationomer coats were synthesised on the basis of typical diisocyanates, properly selected polyether polyols, HO-tertiary amines and HCOOH as quaternisation reagents. The values of their surface free energy (SFE) parameters were obtained by the van Oss-Good method, with the use of the contact angle values which had been found by the goniometric method. Based on the obtained findings, empirical models were developed which made it possible to anticipate the effects of the raw material types on the SFE values of the produced coats. The possibility was noted to adjust the SFE values within 25–50 mJ/m2 by selecting carefully suitable parent substances. The principal consequences for the formation of improved hydrophobicity coats, applicable inter alia specialised protective coatings, were found to come not only from diisocyanate and polyol types but also from the alkylammonium cation structure which results from the use of different tertiary amines. The fundamental SFE lowering effect was noted when tertiary amines with 0–15 % of the 2,2,3,3-tetrafluoro-1,4-butanediol as a fluorinated chain extender was incorporated into polymer chains.
机译:基于典型的二异氰酸酯,适当选择的聚醚多元醇,HO-叔胺和HCOOH作为季铵化试剂,合成了聚氨酯阳离子聚合物涂层。它们的表面自由能(SFE)参数的值是通过van Oss-Good方法获得的,并使用了通过测角法发现的接触角值。基于获得的发现,建立了经验模型,该模型可以预测原料类型对所生产涂层的SFE值的影响。通过仔细选择合适的母体物质,可以注意到可以将SFE值调节在25-50 mJ / m 2 之间。发现形成改进的疏水性涂层,尤其是适用于特殊保护性涂层的主要结果不仅来自二异氰酸酯和多元醇类型,还来自使用不同叔胺而产生的烷基铵阳离子结构。当叔胺与0-15%的2,2,3,3-四氟-1,4-丁二醇作为氟化的扩链剂掺入聚合物链中时,注意到了基本的SFE降低作用。

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